Store-operated Ca2+ entry (SOCE) is activated in response to the inositol-1,4,5-trisphosphate (InsP3)-dependent depletion of the endoplasmic reticulum (ER) Ca2+ store and represents a ubiquitous mode of Ca2+ influx. In vascular endothelial cells, SOCE regulates a plethora of functions that maintain cardiovascular homeostasis, such as angiogenesis, vascular tone, vascular permeability, platelet aggregation, and monocyte adhesion. The molecular mechanisms responsible for SOCE activation in vascular endothelial cells have engendered a long-lasting controversy. Traditionally, it has been assumed that the endothelial SOCE is mediated by two distinct ion channel signalplexes, i.e., STIM1/Orai1 and STIM1/Transient Receptor Potential Canonical 1(TR...
Abstract—Store-operated calcium (SOC) entry is sufficient to disrupt the extra-alveolar, but not the...
AbstractDepletion of intracellular Ca2+ stores induces Ca2+ influx across the plasma membrane throug...
An increase in intracellular Ca2+ concentration ([Ca2+]i) controls virtually all endothelial cell fu...
Store-operated Ca2+ entry (SOCE) is activated in response to the inositol-1,4,5-trisphosphate (InsP(...
Many endothelial cell (EC) functions depend on influx of extracellular Ca2+, which is triggered by a...
In endothelial cells Ca(2+) entry is an essential component of the Ca(2+) signal that takes place du...
Ca2+-permeable store-operated channels (SOCs) mediate Ca2+ entry pathways which are involved in many...
ABSTRACT Ca2+-permeable store-operated channels (SOCs) mediate Ca2+ entry pathways which are involve...
Ca2+-permeable store-operated channels (SOCs) mediate Ca2+ entry pathways which are involved in many...
Voltage-dependent CaV1.2 L-type Ca2+ channels (LTCC) are the main route for calcium entry in vascula...
Store-operated calcium entry (SOCE) is a principal mechanism for extracellular calcium entry in non-...
A monolayer of endothelial cells (ECs) lines the lumen of blood vessels and forms a multifunctional ...
A monolayer of endothelial cells (ECs) lines the lumen of blood vessels and forms a multifunctional ...
Store-operated calcium entry (SOCE) is a principal mechanism for extracellular calcium entry in non-...
An increase in intracellular Ca2+ concentration ([Ca2+]i) controls virtually all endothelial cell fu...
Abstract—Store-operated calcium (SOC) entry is sufficient to disrupt the extra-alveolar, but not the...
AbstractDepletion of intracellular Ca2+ stores induces Ca2+ influx across the plasma membrane throug...
An increase in intracellular Ca2+ concentration ([Ca2+]i) controls virtually all endothelial cell fu...
Store-operated Ca2+ entry (SOCE) is activated in response to the inositol-1,4,5-trisphosphate (InsP(...
Many endothelial cell (EC) functions depend on influx of extracellular Ca2+, which is triggered by a...
In endothelial cells Ca(2+) entry is an essential component of the Ca(2+) signal that takes place du...
Ca2+-permeable store-operated channels (SOCs) mediate Ca2+ entry pathways which are involved in many...
ABSTRACT Ca2+-permeable store-operated channels (SOCs) mediate Ca2+ entry pathways which are involve...
Ca2+-permeable store-operated channels (SOCs) mediate Ca2+ entry pathways which are involved in many...
Voltage-dependent CaV1.2 L-type Ca2+ channels (LTCC) are the main route for calcium entry in vascula...
Store-operated calcium entry (SOCE) is a principal mechanism for extracellular calcium entry in non-...
A monolayer of endothelial cells (ECs) lines the lumen of blood vessels and forms a multifunctional ...
A monolayer of endothelial cells (ECs) lines the lumen of blood vessels and forms a multifunctional ...
Store-operated calcium entry (SOCE) is a principal mechanism for extracellular calcium entry in non-...
An increase in intracellular Ca2+ concentration ([Ca2+]i) controls virtually all endothelial cell fu...
Abstract—Store-operated calcium (SOC) entry is sufficient to disrupt the extra-alveolar, but not the...
AbstractDepletion of intracellular Ca2+ stores induces Ca2+ influx across the plasma membrane throug...
An increase in intracellular Ca2+ concentration ([Ca2+]i) controls virtually all endothelial cell fu...